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    Novel silicon–tungsten oxide–carbon composite as advanced negative electrode for lithium-ion batteries
    관리자
    2020-05-12      조회 2,406   댓글 0  
    이메일주소 site@site.co.kr
    Author Hyun-seung Kim, Jongjung Kim, Jae Gil Lee, Ji Heon Ryu, Jaekwang Kim, Seung M Oh, Songhun Yoon
    Journal Solid State Ionics
    Year of Pub. 2018


    A cheap Si powder byproduct from solar cell production was applied as a negative electrode for lithium-ion batteries. To improve the cycle and rate performances, the as-obtained Si powder was composited with tungsten oxide and coated with carbon, in sequence. After preparing the composite material, its electrochemical performance is evaluated, which exhibits a high reversible capacity of 975 mA h g− 1 with improved cycleability. Especially, the rate capability is significantly improved to 390 mA h g− 1 under 1000 mA g− 1 applied current. This advanced electrochemical performance is attributed to the matrix effect of the formed Li2O and W metal with carbon coating, as identified using ex-situ X-ray diffraction experiments, and associated with the low polarization resistance observed in the galvanostatic charge intermittent technique.​

     

     

    첨부파일 78.png (262.45KB) [0] 2020-05-12 12:26:42
    첨부파일 Novel_silicon–tungsten_oxide–carbon_composite_as_advanced_negative_electrode_for_lithium-ion_batteries.pdf (909.56KB) [0] 2020-05-12 12:26:42
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